Ancestral Admixture Is the Main Determinant of Global Biodiversity in Fission Yeast

Author:

Tusso Sergio12ORCID,Nieuwenhuis Bart P S1,Sedlazeck Fritz J3,Davey John W4,Jeffares Daniel C56,Wolf Jochen B W12

Affiliation:

1. Division of Evolutionary Biology, Faculty of Biology, LMU Munich, Planegg-Martinsried, Germany

2. Department of Evolutionary Biology, Science for Life Laboratories, Uppsala University, Uppsala, Sweden

3. Human Genome Sequencing Center, Baylor College of Medicine, Houston, TX

4. Bioscience Technology Facility, Department of Biology, University of York, York, United Kingdom

5. Department of Biology, University of York, York, United Kingdom

6. York Biomedical Research Institute (YBRI), University of York, York, United Kingdom

Abstract

Abstract Mutation and recombination are key evolutionary processes governing phenotypic variation and reproductive isolation. We here demonstrate that biodiversity within all globally known strains of Schizosaccharomyces pombe arose through admixture between two divergent ancestral lineages. Initial hybridization was inferred to have occurred ∼20–60 sexual outcrossing generations ago consistent with recent, human-induced migration at the onset of intensified transcontinental trade. Species-wide heritable phenotypic variation was explained near-exclusively by strain-specific arrangements of alternating ancestry components with evidence for transgressive segregation. Reproductive compatibility between strains was likewise predicted by the degree of shared ancestry. To assess the genetic determinants of ancestry block distribution across the genome, we characterized the type, frequency, and position of structural genomic variation using nanopore and single-molecule real-time sequencing. Despite being associated with double-strand break initiation points, over 800 segregating structural variants exerted overall little influence on the introgression landscape or on reproductive compatibility between strains. In contrast, we found strong ancestry disequilibrium consistent with negative epistatic selection shaping genomic ancestry combinations during the course of hybridization. This study provides a detailed, experimentally tractable example that genomes of natural populations are mosaics reflecting different evolutionary histories. Exploiting genome-wide heterogeneity in the history of ancestral recombination and lineage-specific mutations sheds new light on the population history of S. pombe and highlights the importance of hybridization as a creative force in generating biodiversity.

Funder

Knut and Alice Wallenberg Foundation

Swedish National Infrastructure for Computing

York Advanced Research Computing Cluster

LMU Munich

NHGRI

Publisher

Oxford University Press (OUP)

Subject

Genetics,Molecular Biology,Ecology, Evolution, Behavior and Systematics

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